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Peptides ; 27(11): 2706-14, 2006 Nov.
Article in English | MEDLINE | ID: mdl-16797105

ABSTRACT

Two cyclic dipeptides, cyclo(His-Ala) and cyclo(His-Gly,) were synthesized from their linear counterparts and their structures elucidated using standard elucidation techniques. Molecular modeling and predictive NMR results indicated that the majority of energetically favourable conformers adopted a boat conformation with respect to the diketopiperazine ring. Cyclo(His-Ala), at concentrations of 100 microM inhibited the growth, in vitro, of various cancer cell lines, including HT-29, MCF-7 and HeLa carcinoma cells while cyclo(His-Gly) inhibited the growth of MCF-7 cells. While the antibacterial potential of these two compounds was limited, both cyclic dipeptides significantly inhibited the growth of C. albicans. Both compounds at a concentration of 100 microM resulted in a decrease in heart rate, coronary flow rate and left ventricular systolic pressure in the isolated rat heart. Inhibition of thrombin, amounting to a 63.3% and 36.7% reduction in the rate of fibrin formation, was noted for cyclo(His-Ala) and cyclo(His-Gly), respectively. While cyclo(His-Ala) showed no notable effects on platelet aggregation, cyclo(His-Gly) significantly inhibited both pathways tested with greatest effects on thrombin-induced platelet aggregation, yielding an IC(50) of 0.0662 mM (R(2)=0.989). The results of the anticancer and hematological studies indicate that histidine-containing diketopiperazines have potential as a novel group of cytotoxic agents with antithrombotic effects.


Subject(s)
Histidine/chemistry , Peptides, Cyclic/chemical synthesis , Piperazines/chemical synthesis , Animals , Anti-Bacterial Agents , Cell Line, Tumor , Cell Proliferation/drug effects , Diketopiperazines , Drug Screening Assays, Antitumor , Heart Rate/drug effects , Histidine/metabolism , Humans , Molecular Structure , Peptides, Cyclic/chemistry , Peptides, Cyclic/pharmacology , Piperazines/chemistry , Piperazines/pharmacology , Platelet Aggregation/drug effects , Thrombin/drug effects
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